The development of a universal activity descriptor like the d-band model for transition metal catalysts is of great importance to catalyst design. However, due to the complicated electronic structures of metal oxides, the correlation of the binding energies of reaction intermediates (*OH, *O, and *OOH) in the oxygen evolution reaction (OER) with experimentally controllable properties of metal oxides has not been well established. Here we demonstrate that excess electrons are the essential factor that governs the binding properties of intermediates on the surfaces of reducible metal oxides. We propose that the number of excess electrons (NEE) is an essential activity descriptor toward the OER activities of these oxides, which perfectly repro...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
The oxygen evolution reaction (OER) is considered as an important bottleneck in the overall water-sp...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Multimetal oxyhydroxides ...
The development of a universal activity descriptor like the d-band model for transition metal cataly...
A number of important reactions such as the oxygen evolution reaction (OER) are catalyzed by transit...
Developing active and stable oxygen evolution catalysts is a key to enabling various future energ...
Catalysts for oxygen electrochemical processes are critical for the commercial viability of renewabl...
Catalysts for oxygen electrochemical processes are critical for the commercial viability of renewabl...
Computational screening of metal oxide catalysts is challenging due to their more localized and intr...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
We study the oxygen reduction (ORR) and the oxygen evolution reaction (OER) and based on previous ob...
Computational screens for oxygen evolution reaction (OER) catalysts based on Sabatier analysis have ...
A major roadblock in realizing the large-scale production of hydrogen via electrochemical water spli...
The 3d\ua0transition metals have been investigated as active centers in NiOOH to catalyze oxygen evo...
| openaire: EC/H2020/686053/EU//CritCatOxygen evolution reaction (OER) via mixed metal oxy hydroxide...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
The oxygen evolution reaction (OER) is considered as an important bottleneck in the overall water-sp...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Multimetal oxyhydroxides ...
The development of a universal activity descriptor like the d-band model for transition metal cataly...
A number of important reactions such as the oxygen evolution reaction (OER) are catalyzed by transit...
Developing active and stable oxygen evolution catalysts is a key to enabling various future energ...
Catalysts for oxygen electrochemical processes are critical for the commercial viability of renewabl...
Catalysts for oxygen electrochemical processes are critical for the commercial viability of renewabl...
Computational screening of metal oxide catalysts is challenging due to their more localized and intr...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
We study the oxygen reduction (ORR) and the oxygen evolution reaction (OER) and based on previous ob...
Computational screens for oxygen evolution reaction (OER) catalysts based on Sabatier analysis have ...
A major roadblock in realizing the large-scale production of hydrogen via electrochemical water spli...
The 3d\ua0transition metals have been investigated as active centers in NiOOH to catalyze oxygen evo...
| openaire: EC/H2020/686053/EU//CritCatOxygen evolution reaction (OER) via mixed metal oxy hydroxide...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
The oxygen evolution reaction (OER) is considered as an important bottleneck in the overall water-sp...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Multimetal oxyhydroxides ...